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Titlebook: Excitatory-Inhibitory Balance; Synapses, Circuits, Takao K. Hensch,Michela Fagiolini Book 2004 Kluwer Academic/Plenum Publishers, New York

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https://doi.org/10.1007/978-1-4615-0039-1PCR; computational neuroscience; cortex; imaging techniques; neurons; neuroscience
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Affekte im Feld. Zu Ethnografie und ,tting electrical activity between nerve cells and converting electrical activity into molecular signals via intracellular signal transduction. A wealth of information on the molecular composition and electophysiological properties of the post synaptic terminal has raised new and crucial questions fo
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H. G. Berger,A. Schwarz,W. Harteltic terminals and opens postsynaptic cation channels integrated in glutamate receptor proteins. This transmission is not static, but rather is dynamically regulated in both a positive and negative manner by its own activity level as well as by interactions with other synaptic inputs. Such regulation
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https://doi.org/10.1007/978-3-642-78841-3ceptors share a common pentameric structure delineating the channel. The subunits harbor an extracellular N-terminal domain, four transmembrane segments (Ml-4), the M2 segments forming the pore walls. The ligand binding sites are associated with a subunits, while the other ones contains regulatory s
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https://doi.org/10.1007/978-3-663-08504-1modifies the responsiveness by producing enduring changes in the strength of cortical synapses activity-dependently. At first, only excitatory synapses were considered to be modifiable and they were examined in slice preparations. In fact, multiple types of long-term plasticity were demonstrated at
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Joachim Hemer,Kemens Gutmann,Hariolf Grupprs. Accumulated evidence suggests that endogenous cannabinoids function as diffusible and short-lived intercellular messengers that modulate synaptic transmission. Recent studies have provided strong experimental evidence that endogenous cannabinoids (endocannabinoids) are released from postsynaptic
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